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Mechanical and biological evaluation of 3D printed 10CeTZP-Al2O3 structures

机译:3D印刷的机械和生物学评价为10cetzp-Al2O3结构

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摘要

Three-dimensional structures were robocasted from a 10 mol% ceria-stabilized zirconia and alumina composite (10CeTZP-Al2O3). A hydrogel-based printable ink was developed using a unique non-ionic copolymer surfactant. Self-supporting and free-standing structures, including round lattices with interconnected pores (200-600 mu m pores; 30-50% porosity), rectangular bars (95% density on average) and cones were successfully printed. The round lattices of 200 mu m pores and 30% porosity showed compression strengths similar to those of cortical bone, reaching almost 200 MPa. The maximum flexural strength value attained for the rectangular bars was 575 MPa. In vitro biological studies demonstrated that the samples allow for practically 100% cell viability, confirming their non-cytotoxic nature. Cell differentiation tests were performed using osteoblasts incubated for 7 days in supplemented cell culture medium. Quantification of specific osseous differentiation genes showed that the robocasted structures induced a higher degree of osseous differentiation than tissue culture polystyrene. (C) 2017 Elsevier Ltd. All rights reserved.
机译:从10mol%的二氧化铈稳定的氧化锆和氧化铝复合物(10cetzp-Al2O3)抢劫三维结构。使用独特的非离子共聚物表面活性剂开发水凝胶基可印刷油墨。自支撑和独立结构,包括圆形格子,具有相互连接的孔(200-600 mu m孔; 30-50%孔隙率),矩形条(平均95%的密度)和锥体均匀。 200μm孔的圆形格子和30%的孔隙率显示出与皮质骨骼相似的压缩强度,达到近200MPa。矩形棒获得的最大弯曲强度值为575MPa。体外生物学研究表明,样品允许实际上100%的细胞活力,确认它们的非细胞毒性。使用在补充细胞培养基中孵育7天的成骨细胞进行细胞分化试验。特异性骨质分化基因的定量表明,罗布型结构诱导比组织培养聚苯乙烯更高程度的骨质分化。 (c)2017 Elsevier Ltd.保留所有权利。

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